Smart Gas Emergency Simulation System for Regional Hazard Adaptation
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Solution Overview
Problem
Existing emergency safety simulation drills for gas operations in different regulatory regions often fail to account for unique hazards and environments, leading to ineffective drills that do not meet actual demand.
Innovation Solution
A method and IoT system for smart gas emergency safety simulation based on government regulation, which includes a gas company management platform that obtains gas regulatory information, predicts potential hazards, determines emergency safety simulation parameters, and optimizes warning device parameters to align with actual scenarios.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Ease of manufacture
If preset emergency drill plans are implemented uniformly across different regulatory regions, then the drill implementation is simplified and standardized, but the drills fail to account for unique local hazards and environments, reducing their effectiveness
Solution Approach 1:
The system implements local quality by obtaining gas regulatory information specific to each regulatory region and determining region-specific emergency safety simulation parameters. Different regulatory regions receive customized drill plans based on their unique hazards, environments, and regulatory requirements, rather than applying a uniform preset plan across all regions.
Solution Approach 2:
The system changes parameters by dynamically determining emergency safety simulation parameters including warning device parameters, simulation scenario parameters, and evaluation criteria based on the specific gas regulatory information of each region. This allows the drill parameters to be adapted to local conditions while maintaining standardized implementation processes.
2Device complexity
If generic emergency drill plans are used for different gas scenarios, then the planning process is simplified, but the drills do not address specific potential hazards of different regulatory regions, resulting in poor simulation quality
Solution Approach 1:
The system segments the emergency drill planning process by dividing regulatory regions into distinct segments based on their specific hazards and characteristics. Each segment receives customized simulation parameters and scenarios tailored to its unique risk profile, rather than using a single generic plan for all regions.
Solution Approach 2:
The system applies dynamics by making the drill plan parameters dynamic and adaptable rather than static and fixed. The emergency safety simulation parameters are dynamically determined based on real-time gas regulatory information and potential hazard assessments for each regulatory region, allowing the plans to evolve with changing conditions.
3Ease of operation
If warning device parameters are not optimized for specific regions, then the system configuration is simpler, but the warning devices may not be appropriately calibrated for local hazard levels and environmental conditions
Solution Approach 1:
The system performs preliminary action by pre-obtaining gas regulatory information and pre-determining potential emergency hazards for each regulatory region before conducting the emergency safety simulation. This allows warning device parameters to be pre-configured and optimized for specific regional conditions, eliminating the need for complex on-site calibration during actual drills.
Data Source
AI summary
Methods, Internet of Things (IoT) systems, and storage mediums for smart gas emergency safety simulation based on government regulation are provided. The method may be implemented by the IoT system for smart gas emergency safety simulation based on government regulation. The method may include: predicting, by a gas company management platform, potential emergency hazards of a plurality of regulatory regions based on obtained gas regulatory information of the plurality of regulatory regions, determining, based on hazard feedback information corresponding to the potential emergency hazards and the gas regulatory information, emergency safety simulation parameters corresponding to the plurality of regulatory regions; sending the emergency safety simulation parameters to a gas user platform and sending emergency safety simulation notifications to emergency safety simulation personnel; and determining an emergency safety simulation result corresponding to the emergency safety simulation parameters based on simulation monitoring data.


